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fold decrease » fold increase (Expand Search), fold increased (Expand Search)
nn decrease » _ decrease (Expand Search), mean decrease (Expand Search), gy decreased (Expand Search)
we decrease » _ decrease (Expand Search), mean decrease (Expand Search), teer decrease (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
5 fold » _ fold (Expand Search)
fold decrease » fold increase (Expand Search), fold increased (Expand Search)
nn decrease » _ decrease (Expand Search), mean decrease (Expand Search), gy decreased (Expand Search)
we decrease » _ decrease (Expand Search), mean decrease (Expand Search), teer decrease (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
5 fold » _ fold (Expand Search)
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40301
Bar graph showing proportion of NADCs.
Published 2025“…ADCs were seen in 77.5% of the population while participants with NADCs were older (p < 0.001). …”
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40302
Baseline characteristics of study participants.
Published 2025“…ADCs were seen in 77.5% of the population while participants with NADCs were older (p < 0.001). …”
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40303
Long-Term Super-Resolution Imaging through Torsional Angle Inversed Rhodamines
Published 2025“…Cells continually change their protein arrangements, yet the molecular fine details are obscured by the short-lived deficiency of fluorophore blinking for super-resolution imaging. Herein, we propose a hybrid crowding strategy leveraging the geometric electron effect from bridging atom substitution to conserve the self-blinking events for prolonging the imaging time. …”
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40304
Long-Term Super-Resolution Imaging through Torsional Angle Inversed Rhodamines
Published 2025“…Cells continually change their protein arrangements, yet the molecular fine details are obscured by the short-lived deficiency of fluorophore blinking for super-resolution imaging. Herein, we propose a hybrid crowding strategy leveraging the geometric electron effect from bridging atom substitution to conserve the self-blinking events for prolonging the imaging time. …”
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40305
Long-Term Super-Resolution Imaging through Torsional Angle Inversed Rhodamines
Published 2025“…Cells continually change their protein arrangements, yet the molecular fine details are obscured by the short-lived deficiency of fluorophore blinking for super-resolution imaging. Herein, we propose a hybrid crowding strategy leveraging the geometric electron effect from bridging atom substitution to conserve the self-blinking events for prolonging the imaging time. …”
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40306
Long-Term Super-Resolution Imaging through Torsional Angle Inversed Rhodamines
Published 2025“…Cells continually change their protein arrangements, yet the molecular fine details are obscured by the short-lived deficiency of fluorophore blinking for super-resolution imaging. Herein, we propose a hybrid crowding strategy leveraging the geometric electron effect from bridging atom substitution to conserve the self-blinking events for prolonging the imaging time. …”
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40307
Long-Term Super-Resolution Imaging through Torsional Angle Inversed Rhodamines
Published 2025“…Cells continually change their protein arrangements, yet the molecular fine details are obscured by the short-lived deficiency of fluorophore blinking for super-resolution imaging. Herein, we propose a hybrid crowding strategy leveraging the geometric electron effect from bridging atom substitution to conserve the self-blinking events for prolonging the imaging time. …”
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40308
Long-Term Super-Resolution Imaging through Torsional Angle Inversed Rhodamines
Published 2025“…Cells continually change their protein arrangements, yet the molecular fine details are obscured by the short-lived deficiency of fluorophore blinking for super-resolution imaging. Herein, we propose a hybrid crowding strategy leveraging the geometric electron effect from bridging atom substitution to conserve the self-blinking events for prolonging the imaging time. …”
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40309
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40310
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40311
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40312
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40313
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40314
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40315
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40316
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40317
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40318
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40319
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40320